SOTAVerified

Contrastive Learning

Contrastive Learning is a deep learning technique for unsupervised representation learning. The goal is to learn a representation of data such that similar instances are close together in the representation space, while dissimilar instances are far apart.

It has been shown to be effective in various computer vision and natural language processing tasks, including image retrieval, zero-shot learning, and cross-modal retrieval. In these tasks, the learned representations can be used as features for downstream tasks such as classification and clustering.

(Image credit: Schroff et al. 2015)

Papers

Showing 126150 of 6661 papers

TitleStatusHype
One Train for Two Tasks: An Encrypted Traffic Classification Framework Using Supervised Contrastive LearningCode2
DiffCSE: Difference-based Contrastive Learning for Sentence EmbeddingsCode2
DreamLIP: Language-Image Pre-training with Long CaptionsCode2
DetailCLIP: Detail-Oriented CLIP for Fine-Grained TasksCode2
Decoupling Static and Hierarchical Motion Perception for Referring Video SegmentationCode2
Denoising as Adaptation: Noise-Space Domain Adaptation for Image RestorationCode2
Detecting and Grounding Multi-Modal Media ManipulationCode2
EasyRec: Simple yet Effective Language Models for RecommendationCode2
DATR: Unsupervised Domain Adaptive Detection Transformer with Dataset-Level Adaptation and Prototypical AlignmentCode2
CoST: Contrastive Learning of Disentangled Seasonal-Trend Representations for Time Series ForecastingCode2
Contrastive Search Is What You Need For Neural Text GenerationCode2
Crafting Better Contrastive Views for Siamese Representation LearningCode2
DCdetector: Dual Attention Contrastive Representation Learning for Time Series Anomaly DetectionCode2
Contrastive learning of cell state dynamics in response to perturbationsCode2
Contrastive Learning of Asset Embeddings from Financial Time SeriesCode2
Cross-lingual and Multilingual CLIPCode2
CrossPoint: Self-Supervised Cross-Modal Contrastive Learning for 3D Point Cloud UnderstandingCode2
Contrastive learning of Class-agnostic Activation Map for Weakly Supervised Object Localization and Semantic SegmentationCode2
Delving into Inter-Image Invariance for Unsupervised Visual RepresentationsCode2
Anchored Preference Optimization and Contrastive Revisions: Addressing Underspecification in AlignmentCode2
A DeNoising FPN With Transformer R-CNN for Tiny Object DetectionCode2
Detecting and Grounding Multi-Modal Media Manipulation and BeyondCode2
DeTeCtive: Detecting AI-generated Text via Multi-Level Contrastive LearningCode2
DiffMM: Multi-Modal Diffusion Model for RecommendationCode2
Analyzing and Boosting the Power of Fine-Grained Visual Recognition for Multi-modal Large Language ModelsCode2
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Benchmark Results

#ModelMetricClaimedVerifiedStatus
1ResNet50ImageNet Top-1 Accuracy73.6Unverified
2ResNet50ImageNet Top-1 Accuracy73Unverified
3ResNet50ImageNet Top-1 Accuracy71.1Unverified
4ResNet50ImageNet Top-1 Accuracy69.3Unverified
5ResNet50 (v2)ImageNet Top-1 Accuracy67.6Unverified
6ResNet50 (v2)ImageNet Top-1 Accuracy63.8Unverified
7ResNet50ImageNet Top-1 Accuracy63.6Unverified
8ResNet50ImageNet Top-1 Accuracy61.5Unverified
9ResNet50ImageNet Top-1 Accuracy61.5Unverified
10ResNet50 (4×)ImageNet Top-1 Accuracy61.3Unverified
#ModelMetricClaimedVerifiedStatus
110..5sec1Unverified
#ModelMetricClaimedVerifiedStatus
1IPCL (ResNet18)Accuracy (Top-1)84.77Unverified
#ModelMetricClaimedVerifiedStatus
1IPCL (ResNet18)Accuracy (Top-1)85.55Unverified